# 🦉 Hooks 🦉 ## Content - [Overview](#overview) - [Example: Mouse Position](#example-mouse-position) - [Example: Autofocus](#example-autofocus) - [Reference](#reference) - [One Rule](#one-rule) - [`useState`](#usestate) - [`onMounted`](#onmounted) - [`onWillUnmount`](#onwillunmount) - [`onWillPatch`](#onwillpatch) - [`onPatched`](#onpatched) - [`useRef`](#useref) ## Overview Hooks were popularised by React as a way to solve the following issues: - help reusing stateful logic between components - help organizing code by feature in complex components - use state in functional components, without writing a class. Owl hooks serve the same purpose, except that they work for class components (note: React hooks do not work on class components, and maybe because of that, there seems to be the misconception that hooks are in opposition to class. This is clearly not true, as shown by Owl hooks). Hooks works beautifully with Owl components: they solve the problems mentioned above, and in particular, they are the perfect way to make your component reactive. ## Example: mouse position Here is the classical example of a non trivial hook to track the mouse position. ```js const { useState, onMounted, onWillUnmount } = owl.hooks; // We define here a custom behaviour: this hook tracks the state of the mouse // position function useMouse() { const position = useState({ x: 0, y: 0 }); function update(e) { position.x = e.clientX; position.y = e.clientY; } onMounted(() => { window.addEventListener("mousemove", update); }); onWillUnmount(() => { window.removeEventListener("mousemove", update); }); return position; } // Main root component class App extends owl.Component { static template = xml`
Mouse: ,
`; // this hooks is bound to the 'mouse' property. mouse = useMouse(); } ``` Note that we use the prefix `use` for hooks, just like in React. This is just a convention. ## Example: autofocus Hooks can be combined to create the desired effect. For example, the following hook combines the `useRef` hook with the `onPatched` and `onMounted` functions to create an easy way to focus an input whenever it appears in the DOM: ```js function useAutofocus(name) { let ref = useRef(name); let isInDom = false; function updateFocus() { if (!isInDom && ref.el) { isInDom = true; ref.el.focus(); } else if (isInDom && !ref.el) { isInDom = false; } } onPatched(updateFocus); onMounted(updateFocus); } ``` This hook takes the name of a valid `t-ref` directive, which should be present in the template. It then checks whenever the component is mounted or patched if the reference is not valid, and in this case, it will focus the node element. This hook can be used like this: ```js class SomeComponent extends Component { static template = xml`
`; constructor(...args) { super(...args); useAutofocus("myinput"); } } ``` ## Reference ### One rule There is only one rule: every hook for a component have to be called in the constructor (or in class fields): ```js // ok class SomeComponent extends Component { state = useState({ value: 0 }); } // also ok class SomeComponent extends Component { constructor(...args) { super(...args); this.state = useState({ value: 0 }); } } // not ok: this is executed after the constructor is called class SomeComponent extends Component { async willStart() { this.state = useState({ value: 0 }); } } ``` ### `useState` The `useState` hook is certainly the most important hooks for Owl components: this is what enables component to be reactive, to react to state change. The `useState` hook has to be given an object or an array, and will return an observed version of it (using a `Proxy`). ```javascript const { useState } = owl.hooks; class Counter extends owl.Component { static template = xml` `; state = useState({ value: 0 }); increment() { this.state.value++; } } ``` ### `onMounted` `onMounted` is not an user hook, but is a building block designed to help make useful abstractions. `onMounted` registers a callback, which will be called when the component is mounted (see example on top of this page). ### `onWillUnmount` `onWillUnmount` is not an user hook, but is a building block designed to help make useful abstractions. `onWillUnmount` registers a callback, which will be called when the component is unmounted (see example on top of this page). ### `onWillPatch` `onWillPatch` is not an user hook, but is a building block designed to help make useful abstractions. `onWillPatch` registers a callback, which will be called just before the component patched. ### `onPatched` `onPatched` is not an user hook, but is a building block designed to help make useful abstractions. `onPatched` registers a callback, which will be called just after the component patched. ### `useRef` The `useRef` hook is useful when we need a way to interact with some inside part of a component, rendered by Owl. It can work either on a DOM node, or on a component, tagged by the `t-ref` directive: ```xml
``` In this example, the component will be able to access the `div` and the component `SubComponent` using the `useRef` hook: ```js class Parent extends Component { subRef = useRef("someComponent"); divRef = useRef("someDiv"); someMethod() { // here, if component is mounted, refs are active: // - this.divRef.el is the div HTMLElement // - this.subRef.comp is the instance of the sub component } } ``` As shown by the example above, html elements are accessed by using the `el` key, and components references are accessed with `comp`. Note: if used on a component, the reference will be set in the `refs` variable between `willPatch` and `patched`. The `t-ref` directive also accepts dynamic values with string interpolation (like the [`t-attf-`](qweb.md#dynamic-attributes) and `t-component` directives). For example, ```xml
``` Here, the references needs to be set like this: ```js this.ref1 = useRef("component_1"); this.ref2 = useRef("component_2"); ``` References are only guaranteed to be active while the parent component is mounted. If this is not the case, accessing `el` or `comp` on it will return `null`.